Pre-operative exercise therapy triggers anti-inflammatory trained immunity of Kupffer cells through metabolic reprogramming

Hongji Zhang, Tianmeng Chen, Jinghua Ren, Yujia Xia, Amblessed Onuma, Yu Wang, Jiayi He, Junru Wu, Han Wang, Ahmad Hamad, Chengli Shen, Jinxiang Zhang, John M. Asara, Gregory K. Behbehani, Haitao Wen, Meihong Deng, Allan Tsung, Hai Huang

Research output: Contribution to journalArticlepeer-review

67 Scopus citations

Abstract

Pre-operative exercise therapy improves outcomes for many patients who undergo surgery. Despite the well-known effects on tolerance to systemic perturbation, the mechanisms by which pre-operative exercise protects the organ that is operated on from inflammatory injury are unclear. Here, we show that four-week aerobic pre-operative exercise significantly attenuates liver injury and inflammation from ischaemia and reperfusion in mice. Remarkably, these beneficial effects last for seven more days after completing pre-operative exercising. We find that exercise specifically drives Kupffer cells toward an anti-inflammatory phenotype with trained immunity via metabolic reprogramming. Mechanistically, exercise-induced HMGB1 release enhances itaconate metabolism in the tricarboxylic acid cycle that impacts Kupffer cells in an NRF2-dependent manner. Therefore, these metabolites and cellular/molecular targets can be investigated as potential exercise-mimicking pharmaceutical candidates to protect against liver injury during surgery.

Original languageEnglish
Pages (from-to)843-858
Number of pages16
JournalNature Metabolism
Volume3
Issue number6
DOIs
StatePublished - Jun 2021

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